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Restructuring a Software based MPEG-4 Video Decoder for Short Latency Hardware Acceleration

机译:重组基于软件的MPEG-4视频解码器,以实现短时硬件加速

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摘要

The multimedia capabilities of emerging high-end battery powered mobile devices rely on monolithic hardware accelerators with long latencies to minimize interrupt and software overheads. When compared to pure software implementations, monolithic hardware accelerator solutions need an order of magnitude less power. However, they are rather inflexible and difficult to modify to provide support for multiple coding standards. A more flexible alternative is to employ finer grained short latency accelerators that implement the individual coding functions. Unfortunately, with this approach the software overheads can become very high, if interrupts are used for synchronizing the software and hardware. Preferably, the cost of hardware accelerator interfacing should be at the same level with software functions. In this paper we study the benefits attainable from such an approach. As a case study we restructure a MPEG-4 video decoder in a manner that enables the simultaneous decoding of multiple bit streams using short latency hardware accelerators. The approach takes multiple video bit streams as input and produces a multiplexed stream that is used to control the hardware accelerators without interrupts. The decoding processes of each stream can be considered as threads that share the same hardware resources. Software simulations predict that the energy efficiency of the approach would be significantly better than for a pure software implementation.
机译:新兴的高端电池供电移动设备的多媒体功能依赖于具有长延迟的单片硬件加速器,以最大程度地减少中断和软件开销。与纯软件实现相比,单片硬件加速器解决方案所需的功耗要少一个数量级。然而,它们相当不灵活并且难以修改以提供对多种编码标准的支持。一种更灵活的选择是采用实现单独编码功能的更细粒度的短等待时间加速器。不幸的是,如果使用中断来同步软件和硬件,则采用这种方法的软件开销可能会非常高。优选地,硬件加速器接口的成本应该与软件功能在同一水平上。在本文中,我们研究了通过这种方法可获得的好处。作为案例研究,我们以能够使用短等待时间硬件加速器同时解码多个比特流的方式重组MPEG-4视频解码器。该方法将多个视频比特流作为输入,并生成一个多路复用的流,该流用于控制硬件加速器而不会中断。每个流的解码过程可以视为共享相同硬件资源的线程。软件仿真预测,该方法的能源效率将明显优于纯软件实施方案。

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